DIN ISO 9022-6-2015 Optics and photonics - Environmental test methods - Part 6 Dust (ISO 9022-6 2015)《光学和光子学 环境试验方法 第6部分 尘埃试验(ISO 9022-6-2015)》.pdf
《DIN ISO 9022-6-2015 Optics and photonics - Environmental test methods - Part 6 Dust (ISO 9022-6 2015)《光学和光子学 环境试验方法 第6部分 尘埃试验(ISO 9022-6-2015)》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 9022-6-2015 Optics and photonics - Environmental test methods - Part 6 Dust (ISO 9022-6 2015)《光学和光子学 环境试验方法 第6部分 尘埃试验(ISO 9022-6-2015)》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、August 2015 Translation by DIN-Sprachendienst.English price group 7No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS
2、37.020!%DF“2333588www.din.deDDIN ISO 9022-6Optics and photonics Environmental test methods Part 6: Dust (ISO 9022-6:2015),English translation of DIN ISO 9022-6:2015-08Optik und Photonik Umweltprfverfahren Teil 6: Staub (ISO 9022-6:2015),Englische bersetzung von DIN ISO 9022-6:2015-08Optique et photo
3、nique Mthodes dessais denvironnement Partie 6: Poussire (ISO 9022-6:2015),Traduction anglaise de DIN ISO 9022-6:2015-08SupersedesDIN ISO 9022-6:1999-05www.beuth.deDocument comprises 9 pagesIn case of doubt, the German-language original shall be considered authoritative.07.15 A comma is used as the d
4、ecimal marker. National foreword 3Introduction .51 Scope . 62 Normative references 63 General information and test conditions 64 Conditioning method 52: Blowing dust 85 Procedure.85.1 General . 85.2 Preconditioning 85.3 Recovery . 96 Environmental test code . 97 Specification 9Contents PageNational
5、Annex NA (informative) Bibliography4DIN ISO 9022-6:2015-08 2 National foreword This document (ISO 9022-6:2015) has been prepared by Technical Committee ISO/TC 172 “Optics and photonics”, Subcommittee SC 1 “Fundamental standards” (Secretariat: DIN, Germany). The responsible German body involved in it
6、s preparation was the DIN-Normenausschuss Feinmechanik und Optik (DIN Standards Committee Optics and Precision Mechanics), Working Committee NA 027-01-02 AA Grundnormen der Optik, Working Group NA 027-01-02-03 AK Umweltbedingungen und -prfungen fr optische Gerte. Attention is drawn to the possibilit
7、y that some of the elements of this document may be the subject of patent rights. DIN and/or DKE shall not be held responsible for identifying any or all such patent rights. DIN ISO 9022 consists of the following parts, under the general title Optics and photonics Environmental test methods: Part 1:
8、 Definitions, extent of testing Part 2: Cold, heat and humidity Part 3: Mechanical stress Part 4: Salt mist Part 6: Dust Part 7: Resistance to drip or rain Part 8: High internal pressure, low internal pressure, immersion Part 9: Solar radiation and weathering Part 11: Mould growth Part 12: Contamina
9、tion Part 14: Dew, hoarfrost, ice Part 17: Combined contamination, solar radiation Part 20: Humid atmosphere containing sulfur dioxide or hydrogen sulfide Part 22: Combined cold, dry heat or temperature change with bump or random vibration Part 23: Low pressure combined with cold, ambient temperatur
10、e and dry and damp heat The DIN Standards corresponding to the International Standards referred to in this document are as follows: ISO 565 DIN ISO 565 ISO 9022-1 DIN ISO 9022-1 Amendments This standard differs from DIN ISO 9022-6:1999-05 as follows: a) normative references have been updated; b) the
11、 standard has been editorially updated; c) the text of International Standard ISO 9022-6:2015 has been adopted in its entirety. Previous editions DIN 58390-6: 1976-05, 1985-02 DIN ISO 9022-6: 1999-05 DIN ISO 9022-6:2015-08 3 National Annex NA (informative) Bibliography DIN ISO 565, Test sieves Metal
12、 wire cloth, perforated metal plate and electroformed sheet Nominal sizes of openings DIN ISO 9022-1, Optics and photonics Environmental test methods Part 1: Definitions, extent of testing DIN ISO 10109, Optics and photonics Guidance for the selection of environmental tests DIN ISO 9022-6:2015-08 4
13、IntroductionOptical instruments are affected during their use by a number of different environmental parameters which they are required to resist without significant reduction in performance and to remain within defined specifications.The type and severity of these parameters depend on the condition
14、s of use of the instrument (for example, in the laboratory or workshop) and on its geographical location. The environmental effects on optical instrument performance in the tropics and subtropics are totally different from those found when they are used in arctic regions. Individual parameters cause
15、 a variety of different and overlapping effects on instrument performance.The manufacturer attempts to ensure, and the user naturally expects, that instruments will resist the likely rigours of their environment throughout their life. This expectation can be assessed by exposure of the instrument to
16、 a range of simulated environmental parameters under controlled laboratory conditions. The severity of these conditions is often increased to obtain meaningful results in a relatively short period of time.In order to allow assessment and comparison of the response of optical instruments to appropria
17、te environmental conditions, ISO 9022 contains details of a number of laboratory tests which reliably simulate a variety of different environments. The tests are based largely on IEC standards, modified where necessary to take into account features special to optical instruments.As a result of conti
18、nuous progress in all fields, optical instruments are no longer only precision-engineered optical products, but, depending on their range of application, also contain additional assemblies from other fields. For this reason, the principal function of the instrument is to be assessed to determine whi
19、ch International Standard should be used for testing. If the optical function is of primary importance, then ISO 9022 is applicable, but if other functions take precedence, then the appropriate International Standard in the field concerned should be applied. Cases can arise where application of both
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